Search results for "Electromagnetic Phenomena"

showing 3 items of 13 documents

The hyperfine structure in the rotational spectra of D2(17)O and HD(17)O: Confirmation of the absolute nuclear magnetic shielding scale for oxygen

2015

Guided by theoretical predictions, the hyperfine structures of the rotational spectra of mono- and bideuterated-water containing (17)O have been experimentally investigated. To reach sub-Doppler resolution, required to resolve the hyperfine structure due to deuterium quadrupole coupling as well as to spin-rotation (SR) and dipolar spin-spin couplings, the Lamb-dip technique has been employed. The experimental investigation and in particular, the spectral analysis have been supported by high-level quantum-chemical computations employing coupled-cluster techniques and, for the first time, a complete experimental determination of the hyperfine parameters involved was possible. The experimental…

RotationGeneral Physics and AstronomyOxygen Isotopesquantum-chemical calculationParamagnetismrotational spectroscopyPhysics::Atomic PhysicsDeuterium OxidePhysical and Theoretical ChemistryHyperfine structureOxygen-17ChemistrySpectrum AnalysisWaterDeuterium17O NMR shieldinghyperfine parameterModels ChemicalDeuteriumElectromagnetic shieldingQuadrupoleQuantum TheoryDiamagnetismRotational spectroscopyAtomic physicsElectromagnetic PhenomenaLamb-dip technique
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Transcranial magnetic stimulation and neuroplasticity

1998

We review past results and present novel data to illustrate different ways in which TMS can be used to study neural plasticity. Procedural learning during the serial reaction time task (SRTT) is used as a model of neural plasticity to illustrate the applications of TMS. These different applications of TMS represent principles of use that we believe are applicable to studies of cognitive neuroscience in general and exemplify the great potential of TMS in the study of brain and behavior. We review the use of TMS for (1) cortical output mapping using focal, single-pulse TMS; (2) identification of the mechanisms underlying neuroplasticity using paired-pulse TMS techniques; (3) enhancement of th…

Serial reaction timeNeuronal PlasticityCognitive Neurosciencemedicine.medical_treatmentMotor CortexPrefrontal CortexExperimental and Cognitive PsychologyCognitionCognitive neuroscienceProcedural memoryTranscranial magnetic stimulationBehavioral NeuroscienceInvestigation methodsNeuroimagingNeuroplasticityReaction TimemedicineHumansLearningPsychologyElectromagnetic PhenomenaNeuroscienceNeuropsychologia
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Electromagnetically generated extracorporeal shock waves for gallstone lithotripsy: in vitro experiments and clinical relevance.

1989

. First generation shock wave sources have been proved to disintegrate gallstones effectively, but they require the immersion of the patient's body in a tank of water. A recently developed second generation shock wave source (Siemens-Lithostar, Erlangen, FRG) generates shock waves electromagnetically. It presents several novel features. In particular the waterbath can be omitted and due to lower shock wave pressure general anaesthesia is not required. In vitro studies showed that 36 out of 38 gallstones (11–30 mm in diameter) could be disintegrated. Two concrements resisting lithotripsy were pure white cholesterol stones. Independent of shape, size, and composition (cholesterol or pigment) …

Shock wavemedicine.medical_specialtyMaterials sciencemedicine.medical_treatmentClinical BiochemistryGeneral MedicineGallstonesLithotripsyIn Vitro Techniquesmedicine.diseaseBiochemistryExtracorporeal shock wave lithotripsyExtracorporealFirst generationSurgeryMaximum diameterCholelithiasisLithotripsymedicineHumansTomography X-Ray ComputedElectromagnetic PhenomenaBiomedical engineeringEuropean journal of clinical investigation
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